QTL Mapping and Correlations Between Leaf Water Potential and Drought Resistance in Rice Under Upland and Lowland Environments

2008 ◽  
Vol 34 (2) ◽  
pp. 198-206
Author(s):  
Yan-Ying QU ◽  
Ping MU ◽  
Xue-Qin LI ◽  
Yu-Xiu TIAN ◽  
Feng WEN ◽  
...  
2014 ◽  
Vol 4 (2) ◽  
Author(s):  
Song Ai Nio ◽  
Audry Agatha Lenak

Abstrak Penggulungan daun merupakan salah satu bentuk resistensi terhadap kekeringan atau lebih tepatnya mekanisme menghindari kekeringan pada tumbuhan monokotil. Mekanisme ini terjadi dengan cara menurunkan laju evapotranspirasi atau dengan meningkatkan absorpsi air pada tanah kering untuk mempertahankan potensial air daun tetap tinggi. Proses penggulungan daun ini berkaitan erat dengan peranan sel kipas. Pada saat kekurangan air, jumlah dan ukuran sel kipas meningkat, sehingga daun akan menggulung. Tingkat penggulungan daun dapat ditentukan secara visual berdasarkan sistem standar evaluasi untuk tanaman padi dengan memberi skor 1-9. Rendahnya tingkat penggulungan daun berkorelasi positif dengan meningkatnya potensial air daun. Kata kunci: menghindari kekeringan, penggulungan daun Abstract Leaf rolling is one mechanism of drought resistance, i.e. drought avoidance. This mechanism was resulted from decreasing evapotranspiration rate or increasing water absorption in the dry soil to maintain high leaf water potential. The process of leaf rolling in monocotyledon was closely related to the activity of bulliform cells. The number and size of bulliform cells were increased under water deficit, so that leaf rolling occurred. Leaf rolling score (1-9) could be visually determined based on the system of standard evaluation in rice. The low leaf rolling score was positively correlated with high leaf water potential. Keywords: drought avoidance, leaf rolling


2013 ◽  
Vol 316-317 ◽  
pp. 207-213
Author(s):  
Xiao Hui Huang ◽  
Da Lan Feng ◽  
Yun Liu ◽  
Yang Hui Geng

To examine possible effects of soil water conditions in summer in Chongqing section of Jialing River Basin on mulberry trees, we grew potted mulberry in a greenhouse under three soil water regimes designed to simulate normal irrigation (CK), moderate drought stress (T1) and extraordinary drought stress (T2). The results showed the following. 1) With drought stress increasing, the heights, base diameters and root biomass all decreased significantly. The root/shoot ratio, specific root area and root activity of mulberry on the whole showed an increasing trend as drought stress increasing. The leaf water potential of mulberry after drought stress on the whole decreased significantly compared with CK; 2)With the elongation of treatment time, the heights, base diameters root biomass and root/shoot ratios of mulberry in the three treatment groups still increased to different degrees. The root activity of mulberry in each treatment group first increased and then decreased basically, but still maintained a higher level compared with CK, moreover, the leaf water potential of mulberry also decreased gradually on the whole. We concluded that under drought stress conditions the growth of mulberry will be inhibited in a way, but the plant can actively improve its absorption ability by some ways, thereby maintaining its normal physiological metabolism, accordingly demonstrating strong drought resistance.


2014 ◽  
Vol 1010-1012 ◽  
pp. 147-154
Author(s):  
Wei Li Tian ◽  
He Hui Song ◽  
Xu Rong Mei ◽  
Yu Zhong Li ◽  
Jia Xuan Guo

Much progress has been made toward understanding plant drought resistance. However, the coordinate responses of plant to drought on the basis of ABA level at physiological, ecological and molecular levels remains unclear. Here, the potted winter wheat (triticum aestivum) was cultivated under relative soil moisture (RSM ) respectively at 85% (well-watered), 65% (moderate stress), and 45% (severe stress), and a series of physiological and ecological parameters including ABA level, stomatal conductance, leaf temperature, leaf water potential, together with transcripts of ABA biosynthesis-metabolism key genes including9-cis-epoxycarotenoid dioxygenase(TaNCED),ABA glucosyltransferase(TaGT),ABA8'-hydroxylase(TaCYP707A), andβ-glucosidase(TaBG) were carried out. We found that ABA contents responsive to soil water loss increased rapidly and showed a significantly-negative correlation with the stomatal conductance and the leaf water potential and a significantly-positive correlation with the leaf-air temperature difference, respectively. The continuous accumulation of ABA was resulted mainly from the increased transcripts of bothTaNCEDsandTaBGsgenes. The transcripts ofTaCYP707A1andTaGTdeclined sharply from 85% to 65% RSM and then increased slightly from 65% to 45% RSM, indicating that ABA metabolism not only accelerates the accumulation of ABA level but also contributes to maintain ABA homeostasis. In conclusion, the macroscopic-microscopic changes responsive to water deficient reflects the ABA-regulated, drought-resistance coordinate mechanisms at physiological, ecological and molecular levels intriticum aestivum.


1986 ◽  
Vol 78 (4) ◽  
pp. 749-751 ◽  
Author(s):  
S. K. Hicks ◽  
R. J. Lascano ◽  
C. W. Wendt ◽  
A. B. Onken

Crop Science ◽  
1986 ◽  
Vol 26 (2) ◽  
pp. 380-383 ◽  
Author(s):  
R. C. Johnson ◽  
H. T. Nguyen ◽  
R. W. McNew ◽  
D. M. Ferris

2021 ◽  
Vol 255 ◽  
pp. 112274
Author(s):  
S. Junttila ◽  
T. Hölttä ◽  
E. Puttonen ◽  
M. Katoh ◽  
M. Vastaranta ◽  
...  

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