Heat‐dependent postpollination limitations on maize pollen tube growth and kernel sterility

Author:

Wang Yuanyuan123,Lv Xuanlong1,Sheng Dechang1,Hou Xinfang1,Mandal Shreya24,Liu Xiaoli1,Zhang Ping15,Shen Si1,Wang Pu1,Krishna Jagadish S. V.26,Huang Shoubing1ORCID

Affiliation:

1. College of Agronomy and Biotechnology China Agricultural University Beijing China

2. Department of Agronomy Kansas State University Manhattan Kansas USA

3. College of Agriculture South China Agricultural University Guangzhou China

4. Division of Biochemistry Indian Agricultural Research Institute Pusa New Delhi India

5. Institute of Maize and Featured Upland Crops Zhejiang Academy of Agricultural Sciences Dongyang China

6. Department of Plant and Soil Science Texas Tech University Lubbock Texas USA

Abstract

AbstractHeat stress has a negative impact on pollen development in maize (Zea mays L.) but the postpollination events that determine kernel sterility are less well characterised. The impact of short‐term (hours) heat exposure during postpollination was therefore assessed in silks and ovaries. The temperatures inside the kernels housed within the husks was significantly lower than the imposed heat stress. This protected the ovaries and possibly the later phase of pollen tube growth from the adverse effects of heat stress. Failure of maize kernel fertilization was observed within 6 h of heat stress exposure postpollination. This was accompanied by a significant restriction of early pollen tube growth rather than pollen germination. Limitations on early pollen tube growth were therefore a major factor contributing to heat stress‐induced kernel sterility. Exposure to heat stress altered the sugar composition of silks, suggesting that hexose supply contributed to the limitations on pollen tube growth. Moreover, the activities of sucrose metabolising enzymes, the expression of sucrose degradation and trehalose biosynthesis genes were decreased following heat stress. Significant increases in reactive oxygen species, abscisic acid and auxin levels accompanied by altered expression of phytohormone‐related genes may also be important in the heat‐induced suppression of pollen tube growth.

Publisher

Wiley

Subject

Plant Science,Physiology

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