Sex-specific interactions affect foliar defense compound accumulation and resistance to herbivores in Populus cathayana

2021 ◽  
Vol 774 ◽  
pp. 145819
Author(s):  
Yue He ◽  
Zuodong Zhu ◽  
Qingxue Guo ◽  
Zhichao Xia
2022 ◽  
Vol 504 ◽  
pp. 119857
Author(s):  
Zhichao Xia ◽  
Yue He ◽  
Helena Korpelainen ◽  
Ülo Niinemets ◽  
Chunyang Li

2009 ◽  
Vol 10 ◽  
pp. 63-75
Author(s):  
Satoshi Miyagi ◽  
Eri Yoshikawa ◽  
Kenichi Dedachi ◽  
Satoshi Itoh ◽  
Mitsuko Ishihara-Sugano ◽  
...  

1980 ◽  
Vol 45 (11) ◽  
pp. 2873-2882
Author(s):  
Vladislav Holba ◽  
Ján Benko

The kinetics of alkaline hydrolysis of succinic acid monomethyl and monopropyl esters were studied in mixed aqueous-nonaqueous media at various temperatures and ionic strengths. The results of measurements are discussed in terms of electrostatic and specific interactions between the reactants and other components of the reaction mixture. The kinetic parameters in the media under study are related to the influence of the cosolvent on the solvation sphere of the reactants.


Author(s):  
Marina Katava ◽  
Guillaume Stirnemann ◽  
Maria Pachetti ◽  
Simone Capaccioli ◽  
Alessandro Paciaroni ◽  
...  

2021 ◽  
Author(s):  
Xiucheng Liu ◽  
Yuting Wang ◽  
Shuangri Liu ◽  
Miao Liu

Abstract Aims Phosphorus (P) availability and efficiency are especially important for plant growth and productivity. However, the sex-specific P acquisition and utilization strategies of dioecious plant species under different N forms are not clear. Methods This study investigated the responsive mechanisms of dioecious Populus cathayana females and males based on P uptake and allocation to soil P supply under N deficiency, nitrate (NO3 −) and ammonium (NH4 +) supply. Important Findings Females had a greater biomass, root length density (RLD), specific root length (SRL) and shoot P concentration than males under normal P availability with two N supplies. NH4 + supply led to higher total root length, RLD and SRL but lower root tip number than NO3 − supply under normal P supply. Under P deficiency, males showed a smaller root system but greater photosynthetic P availability and higher leaf P remobilization, exhibiting a better capacity to adaptation to P-deficiency than females. Under P deficiency, NO3 − supply increased leaf photosynthesis and PUE but reduced RLD and SRL in females while males had higher leaf P redistribution and photosynthetic PUE than NH4 + supply. Females had a better potentiality to cope with P deficiency under NO3 − supply than NH4 + supply; the contrary was true for males. These results suggest that females may devote to increase in P uptake and shoot P allocation under normal P availability, especially under NO3 − supply, while males adopt more efficient resource use and P remobilization to maximum their tolerance to P-deficiency.


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